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Air-Xe enrichments in Elk Hills oil field gases: role of water in migration and storage

机译:麋鹿山油田气体中的Air-Xe浓缩:水在迁移和存储中的作用

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Hydrocarbons from the Elk Hills Naval Petroleum Reserve (NPR#1), Bakersfield, CA, are enriched in heavy noble gases. The ~(132)Xe/~(36)Ar ratios are as high as approx 576 times the ratio in air and represent the largest relative Xe-enrichments ever observed in terrestrial fluids. The Xe isotopic composition is indistinguishable from air. We show that these samples cannot be explained by equilibration of oil with air saturated water and secondary enrichment via a Rayleigh distillation gas stripping process. Based on laboratory studies of others with potential petroleum source rocks, we believe the source of this enriched heavy noble gas component was adsorbed air initially trapped in/on the source rocks that was expelled and mixed with the hydrocarbons during expulsion and primary migration. Kr and Xe enrichments decrease with increasing ~(36)Ar concentration. We propose a model in which an initial Kr-Xe-enriched hydrocarbon becomes diluted with noble gases extracted from air saturated groundwater during expulsion, migration, and storage. The model generates an integrated water/hydrocarbon ratio for the production fluid which indicates a minimal role for water in hydrocarbon expulsion and migration. The results are interpreted to provide time/geometrical constraints on the mechanisms by which hydrocarbons can migrate as a separate phase.
机译:来自加利福尼亚州贝克斯菲尔德的麋鹿山海军石油储备(NPR#1)的碳氢化合物富含重的稀有气体。 〜(132)Xe /〜(36)Ar之比高达空气中之比的576倍,代表了在地球流体中观察到的最大的相对Xe富集。 Xe同位素组成与空气无法区分。我们表明,这些样品不能用饱和空气中的油平衡和通过瑞利蒸馏气提纯过程进行二次富集来解释。根据对其他有潜在石油源岩的实验室研究,我们认为这种富集的重质稀有气体成分的来源是吸附空气,该空气最初被困在烃源岩中/之上,然后在驱出和初次运移过程中被驱出并与碳氢化合物混合。随着〜(36)Ar浓度的增加,Kr和Xe富集度降低。我们提出了一个模型,其中在驱逐,迁移和存储过程中,最初的富含Kr-Xe的烃会被从空气饱和的地下水中提取的稀有气体稀释。该模型为生产液生成了一个综合的水/烃比,表明水在烃驱出和运移中的作用很小。结果被解释为对烃可以作为独立相迁移的机理提供了时间/几何约束。

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